Founding Software Engineer, Robot Learning

Posted Yesterday
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San Francisco, CA, USA
In-Office
160K-220K Hourly
Senior level
Artificial Intelligence • Hardware • Robotics • Hospitality
The Role
Own and develop the end-to-end robot perception stack and high-reliability manipulation policies. Research, deploy, and iterate transformer/diffusion and other learned policies on real hotel robots, handle multimodal sensor data, debug field failures, and optimize models for real-time (~10 Hz) inference on constrained edge hardware.
Summary Generated by Built In

Company Description

At Kovari, we're rethinking how physical work gets done in the age of robotics. We believe building robots that can move the economy is one of the most important endeavors in technology.

 

Our first goal is to build general-purpose robots for hospitality to take on physical, repetitive work that keeps the hospitality industry operating. The last mile problem for proliferating useful robots into businesses is a first class innovation problem itself. We aim to marry deep commercial understanding with fast paced innovation to create robots that move the industry. Since inception, we have raised over $6M to carry out our mission from industry leading investors.

 

We are obsessed with rapid iteration, engineering rigor, and deploying real machines into real environments. The next decade will compress a century of progress in robotics, and we're looking for people who want to leave their fingerprints on that future.

 

We are based in San Francisco and work in-person.

 

The Role

You will own Kovari's perception stack end-to-end—from raw sensor data to actionable representations for both learned policies and classical control. Your systems will run on deployed robots in real hotel environments, handling the messy realities of variable lighting, glass surfaces, temporary obstacles, and repetitive architecture.

 

What You'll Do

  • Research and develop high-reliability manipulation policies designed for high-velocity deployment and iteration

  • Operate in a fast data flywheel across multiple data modalities

  • Deep debug failure modes in transformer and diffusion policy field deployments

  • Optimize policies for real-time (~10hz) inference on edge hardware

 

What you bring

  • Experience deploying robot policies on hardware No preference between model-based learning, reinforcement learning, or imitation learning

  • Sim-to-real or real robot data

  • Experience building policies with multimodal inputs (vision, depth, force/torque, proprioception)

  • Experience with deep optimizations for constrained edge devices TensorRT, ONNX Runtime, or TVM for inference optimization

  • CUDA kernel optimization

  • Ideally, contributions at major robotics/ML conferences (CoRL, RSS, ICRA, NeurIPS)

 

Values

  • Pace of learning trumps everything else.

  • Refining our craft is something we pursue relentlessly.

  • Low ego, high ownership.

  • Commitment to the mission. We work in-person, and this isn't a 9-to-5. We're building something hard, and we need people who are all-in.

Skills Required

  • Experience deploying robot policies on hardware
  • Sim-to-real or real robot data experience
  • Experience building policies with multimodal inputs (vision, depth, force/torque, proprioception)
  • Experience optimizing inference for constrained edge devices (TensorRT, ONNX Runtime, TVM)
  • CUDA kernel optimization experience
  • Deep debugging experience with transformer and diffusion policy field deployments
  • Experience optimizing policies for real-time (~10Hz) edge inference
  • Contributions at major robotics/ML conferences (CoRL, RSS, ICRA, NeurIPS)
  • Ability to work in-person in San Francisco
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The Company
4 Employees
Year Founded: 2025

What We Do

Kovari Industries is a venture-backed company that develops general-purpose robots for the hospitality industry to handle physical, repetitive work. They aim to marry deep commercial understanding with fast-paced innovation to create intelligent machines that move the economy. The company focuses on rapid iteration, engineering rigor, and deploying real machines into real environments to solve the last-mile problem of robot proliferation in businesses.

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